Wall interlayer sealing structure based on wall heat preservation
By using telescopic honeycomb panels and a locking and slotting structure in the wall interlayer, combined with push-out and push-plate components, the technical problems of insulation layer replacement are solved, and the technical problems of insulation and sound insulation layers are realized. The technical application of insulation and heat insulation layers is also achieved. Furthermore, the wall interlayer sealing structure solves the problem of inconvenient insulation layer replacement in existing technologies, improving the stability and replacement efficiency of the insulation layer.
Patent Information
- Application Number
- CN202423289942.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-31
AI Technical Summary
In existing wall insulation sandwich sealing structures, the performance of the insulation layer deteriorates after long-term use, and it is troublesome to disassemble and remove it when replacing it.
It adopts a telescopic honeycomb panel and a card slot structure, combined with push-out components and push plate components, to achieve stable fixation and convenient disassembly and assembly of the insulation layer and heat insulation layer, and quick replacement is assisted by rollers.
It improves the connection stability and thermal insulation effect of the wall interlayer, extends its service life, and facilitates the replacement of the insulation layer and the heat insulation layer.
Smart Images

Figure CN223766991U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of wall sandwich structures, specifically, it relates to a wall sandwich sealing structure based on wall insulation. Background Technology
[0002] Wall insulation is a crucial aspect of building energy conservation. Since the nationwide launch of energy conservation efforts, wall insulation has evolved through stages: internal wall insulation, sandwich insulation, and external wall insulation. "Sandwich insulation" technology involves layering the external wall structure to create a wall-insulation material-wall system, achieving the goal of thermal insulation and energy saving.
[0003] Chinese patent CN210827928U discloses a wall sandwich sealing structure based on wall insulation, including a base plate. A fixing groove is formed on the upper surface of the base plate. A load-bearing layer is fixedly connected to the center of the fixing groove. An insulation layer, a sound insulation board, a fixing layer, and a coating layer are sequentially clamped onto both sides of the load-bearing layer from the inside out. Both fixing layers are fixedly connected to the load-bearing layer via a sandwich fixing device. A sealing cap is also fixedly connected to the top of the load-bearing layer. This wall sandwich sealing structure based on wall insulation, through the combined use of the fixing groove on the base plate, the sealing film covering the sealing cap, and the added sandwich fixing device, effectively fixes each sandwich layer, ensuring a tight connection, good sealing performance, and easy assembly and disassembly, thus guaranteeing the overall quality of the wall.
[0004] The insulation layer in the existing wall insulation sandwich sealing structure suffers from reduced insulation performance after long-term use, requiring replacement to extend the service life of the wall insulation. However, the insulation layer is tightly installed inside the wall, making disassembly and replacement troublesome and difficult to remove.
[0005] In view of this, this utility model is hereby proposed. Utility Model Content
[0006] The technical problem to be solved by this utility model is to overcome the shortcomings of the prior art and provide a wall sandwich sealing structure based on wall insulation, which solves the problems mentioned in the background art.
[0007] To solve the above-mentioned technical problems, the basic concept of the technical solution adopted by this utility model is as follows:
[0008] A wall sandwich sealing structure based on wall insulation includes: a base plate, a main load-bearing plate fixed at the upper center of the base plate, two fixed partitions fixed above the base plate, the two fixed partitions being located on opposite sides of the main load-bearing plate, multiple rollers rotating in the middle of the fixed partitions, a telescopic honeycomb panel slidingly fitted above the fixed partitions, an insulation layer installed between the main load-bearing plate and the telescopic honeycomb panel, a heat insulation layer installed on the outside of the telescopic honeycomb panel, and an exterior wall installed on the outside of the heat insulation layer;
[0009] A top cover plate is fixed above the main load-bearing plate. Multiple through slots are opened in the middle of the top cover plate. Multiple locking blocks corresponding to the two insulation layers and the two heat insulation layers are slidably engaged in the multiple through slots. The rear end of the top cover plate is slidably engaged with the push-out components corresponding to the rear ends of the two insulation layers and the two heat insulation layers. The front end of the top cover plate is slidably engaged with the push-plate assembly, which is connected to the push-out components and the multiple locking blocks.
[0010] Optionally, the telescopic honeycomb panel includes a first honeycomb panel and a second honeycomb panel that is slidably fitted to one side of the first honeycomb panel, and both the first honeycomb panel and the second honeycomb panel are slidably fitted to the left and right above the fixed partition.
[0011] By adopting the above technical solution, the first and second honeycomb panels can be extended to further tighten and fix the insulation and heat insulation layers on both sides, ensuring the positional stability of the insulation and heat insulation layers, and the installed first and second honeycomb panels have the effect of sound insulation and noise reduction.
[0012] Optionally, slots are provided at the top center of both insulation layers and both heat insulation layers, with multiple slots corresponding to multiple slots.
[0013] By adopting the above technical solution, multiple card blocks and multiple card slots are used to create a carding relationship, thereby fixing the positions of the two insulation layers and the two heat insulation layers.
[0014] Optionally, the ejector assembly includes a sloping block that slides back and forth within the rear end of the upper cover plate, and multiple triangular blocks that slide up and down within the rear end of the upper cover plate. The sloping block is located above one side of the multiple triangular blocks, and the sloping side of the sloping block corresponds to the multiple triangular blocks. The sloping sides of the multiple triangular blocks correspond to the upper sides of the rear ends of the two insulation layers and the two heat insulation layers, respectively.
[0015] By adopting the above technical solution, the inclined blocks can be used to press multiple triangular blocks downwards, so that the multiple triangular blocks can push the two insulation layers and two heat insulation layers forward, thereby facilitating the subsequent disassembly and replacement of the two insulation layers and two heat insulation layers.
[0016] Optionally, the push plate assembly includes multiple push blocks that slide back and forth within the front end of the upper cover plate, a fixing rod fixed to the front end of the push blocks, a push handle that rotates and engages with the front end of the multiple fixing rods, two triangular plates that slide and engage with the upper outer sides of the two middle locking blocks, and a push rod fixed between the two middle push blocks.
[0017] By adopting the above technical solution, multiple push blocks can be used to press multiple locking blocks upwards, thereby canceling the locking relationship between the multiple locking blocks and the multiple locking slots. At the same time, the locking blocks drive the triangular plate to move upwards, canceling the pressing relationship on the telescopic honeycomb panel, causing the telescopic honeycomb panel to shrink and cancel the tight relationship on both sides of the insulation layer and heat insulation layer, thus facilitating the subsequent disassembly and replacement of the insulation layer and heat insulation layer.
[0018] Optionally, the front end of the locking block and the rear end of the push block are both inclined surfaces, with the two inclined surfaces corresponding to each other. A spring is fixed between the upper side of the locking block and the triangular plate and the top inside the upper cover plate.
[0019] By adopting the above technical solution, and utilizing the two inclined surfaces, the pusher blocks can push the card blocks upward to create a linkage relationship.
[0020] Optionally, the rear end of the push rod is fixed to the front side of the wedge block, and the lower end of the triangular plate is located between the upper ends of the first and second honeycomb plates.
[0021] By adopting the above technical solution, the push rod is used to drive the inclined block to move synchronously, thereby allowing the insulation layer and heat insulation layer to extend out of the front end of the bottom plate. The triangular plate is used to drive the first honeycomb plate and the second honeycomb plate to extend and retract, thereby achieving the tight fixing of the insulation layer and heat insulation layer on both sides.
[0022] By adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art. Of course, any product implementing the present invention does not necessarily need to achieve all of the following advantages at the same time:
[0023] By setting multiple locking blocks inside the upper cover plate, the insulation and heat insulation layers below are locked in place. At the same time, the telescopic honeycomb panels are used to firmly fix the insulation and heat insulation layers together, thereby improving the stability of the connection between the wall interlayers. The push-out component set at the rear end of the upper cover plate and the push plate component set at the front end of the upper cover plate can drive the multiple locking blocks to release the locking relationship between the insulation and heat insulation layers. At the same time, the push-out component can drive the insulation and heat insulation layers to extend forward to one side of the bottom plate. With the help of multiple rollers set in the middle of the fixed partition, the insulation and heat insulation layers can be quickly removed and replaced, extending the service life of the wall interlayer and ensuring the insulation and heat insulation effect of the wall interlayer.
[0024] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings. Attached Figure Description
[0025] The accompanying drawings described below are merely some embodiments. Those skilled in the art can obtain other drawings based on these drawings without any creative effort.
[0026] In the picture:
[0027] Figure 1 This is a schematic diagram of the base plate structure;
[0028] Figure 2 Schematic diagram of the main load-bearing plate structure;
[0029] Figure 3 This is a schematic diagram of the insulation layer structure;
[0030] Figure 4 This is a schematic diagram of the upper cover plate structure;
[0031] Figure 5 This is a schematic diagram of a triangular block structure.
[0032] The attached diagram lists the components represented by each number as follows:
[0033] 1. Base plate, 2. Main load-bearing plate, 3. Insulation layer, 4. Fixed partition, 5. Roller, 6. Telescopic honeycomb panel, 7. Heat insulation layer, 8. Exterior wall, 9. Top cover plate, 10. Slot, 11. Block, 12. Push block, 13. Spring, 14. Triangle plate, 15. Push rod, 16. Inclined block, 17. Triangle block, 18. Fixed rod, 19. Push handle.
[0034] It should be noted that these accompanying drawings and textual descriptions are not intended to limit the scope of the present invention in any way, but rather to illustrate the concept of the present invention to those skilled in the art by referring to specific embodiments. Detailed Implementation
[0035] The present invention will now be described in further detail with reference to the accompanying drawings.
[0036] Please see Figure 1-5 As shown, this embodiment provides a wall sandwich sealing structure based on wall insulation, including a base plate 1, a main load-bearing plate 2 fixed at the upper center of the base plate 1, two fixed partitions 4 fixed above the base plate 1, the two fixed partitions 4 being located on opposite sides of the main load-bearing plate 2, a plurality of rollers 5 rotatingly engaged in the middle of the fixed partitions 4, a telescopic honeycomb plate 6 slidingly engaged above the fixed partitions 4, an insulation layer 3 installed between the main load-bearing plate 2 and the telescopic honeycomb plate 6, a heat insulation layer 7 installed on the outer side of the telescopic honeycomb plate 6, and an outer wall 8 installed on the outer side of the heat insulation layer 7.
[0037] A top cover plate 9 is fixed above the main load-bearing plate 2. Multiple through slots are provided in the middle of the top cover plate 9. Multiple locking blocks 11, corresponding to the two insulation layers 3 and the two heat insulation layers 7, slide up and down in the multiple through slots. A push-out component, corresponding to the rear end of the two insulation layers 3 and the two heat insulation layers 7, slides in the rear end of the top cover plate 9. A push plate assembly, which is connected to the push-out component and the multiple locking blocks 11, slides in the front end of the top cover plate 9.
[0038] One application of this embodiment is as follows: When it is necessary to disassemble and replace the sealing structure of the wall interlayer, the push plate assembly is first pushed backward, causing it to press against the front ends of multiple locking blocks 11. This causes the multiple locking blocks 11 to move upward simultaneously, canceling their engagement with the two insulation layers 3 and the two heat insulation layers 7. At the same time, the push plate assembly drives the ejection assembly downward, causing it to press against the upper rear ends of the two insulation layers 3 and the two heat insulation layers 7. Then, the two insulation layers 3 and the two heat insulation layers 7 are pushed towards the front end of the base plate 1. At this time, the two insulation layers 3 and the two heat insulation layers 7 can be manually pulled out. During the pulling process, the multiple rollers 5 in the middle of the fixed partition 4 rotate to assist in the extension or retraction of the two insulation layers 3 and the two heat insulation layers 7, making the disassembly and assembly of the two insulation layers 3 and the two heat insulation layers 7 smoother, thereby completing the replacement of the two insulation layers 3 and the two heat insulation layers 7 and extending the service life of the wall interlayer. It should be noted that all electrical equipment involved in this application can be powered by a battery or an external power source.
[0039] like Figure 3 As shown, the telescopic honeycomb panel 6 in this embodiment includes a first honeycomb panel and a second honeycomb panel that slides on one side of the first honeycomb panel. Both the first and second honeycomb panels slide left and right on top of the fixed partition 4. After the insulation layer 3 and the heat insulation layer 7 are installed, the first and second honeycomb panels can be extended to lengthen the distance between them, thereby tightly fitting the first and second honeycomb panels against the opposite inner sides of the insulation layer 3 and the heat insulation layer 7 and fixing them in place.
[0040] like Figure 5 As shown, in this embodiment, slots 10 are provided in the upper center of the two insulation layers 3 and the two heat insulation layers 7, and multiple locking blocks 11 correspond one-to-one with the multiple locking slots 10. When the insulation layer 3 and the heat insulation layer 7 are installed, the multiple locking blocks 11 will extend into the locking slots 10 due to the elastic rebound force of the spring 13, thereby fixing the position of the insulation layer 3 and the heat insulation layer 7.
[0041] like Figure 4-5 As shown, the ejection assembly of this embodiment includes a sloping block 16 that slides back and forth within the rear end of the upper cover plate 9, and multiple triangular blocks 17 that slide up and down within the rear end of the upper cover plate 9. The sloping block 16 is located above one side of the multiple triangular blocks 17, and the sloping side of the sloping block 16 corresponds to the multiple triangular blocks 17. The sloping sides of the multiple triangular blocks 17 correspond to the upper sides of the rear ends of the two insulation layers 3 and the two heat insulation layers 7, respectively. When the sloping block 16 moves backward, the sloping side of the sloping block 16 presses against the upper side of one side of the multiple triangular blocks 17, causing the multiple triangular blocks 17 to move downward synchronously. Then, the multiple triangular blocks 17 synchronously press and eject the two insulation layers 3 and the two heat insulation layers 7, thereby realizing the disassembly and replacement of the insulation layers 3 and the heat insulation layers 7.
[0042] like Figure 4-5 As shown, the push plate assembly of this embodiment includes multiple push blocks 12 that slide back and forth within the front end of the upper cover plate 9, a fixing rod 18 fixed to the front end of the push block 12, a push handle 19 that rotatably engages with the front end of the multiple fixing rods 18, two triangular plates 14 that slide relative to the upper outer sides of the two middle locking blocks 11, and a push rod 15 fixed between the two middle push blocks 12. First, the push handle 19 is rotated until it is horizontal with the fixing rod 18. Then, the push handle 19 is manually pushed backward, causing the push handle 19 to drive the multiple fixing rods 18 and the multiple push blocks 13 to move backward synchronously. Then, the push block 13 contacts and presses against the locking block 11, thereby causing the locking block 11 to cancel its engagement with the locking groove 10.
[0043] like Figure 4-5 As shown, in this embodiment, the front end of the locking block 11 and the rear end of the push block 12 are both inclined surfaces, with the two inclined surfaces corresponding to each other. Springs 13 are fixed between the upper side of the locking block 11 and the upper part of the triangular plate 14 and the top inside the upper cover plate 9. When the inclined surface of the rear end of the push block 12 contacts the inclined surface of the front end of the locking block 11, the push block 12 squeezes the locking block 11, thereby driving the locking block 11 to move upward. Then the locking block cancels the locking relationship with the locking slot 10. At this time, the spring 13 is in a compressed state. Since the triangular plate 14 is slidably engaged with the upper part of one side of the locking block 11, when the locking block 11 moves upward to a certain extent, it will synchronously drive the triangular plate 14 to move upward.
[0044] like Figure 3-4 As shown, in this embodiment, the rear end of the push rod 15 is fixed to the front side of the inclined block 16, and the lower end of the triangular plate 14 is located between the upper ends of the first honeycomb plate and the second honeycomb plate. When the push rod 15 is pushed backward, it simultaneously drives the inclined block 16 to move backward and press down on the multiple triangular blocks 17. The triangular plate 14 moves downward under the elastic rebound force of the spring 13, thereby pressing between the upper ends of the first honeycomb plate and the second honeycomb plate, causing the first honeycomb plate and the second honeycomb plate to stretch away from each other.
[0045] This utility model is not limited to the above-described embodiments. Anyone should know that structural changes made under the guidance of this utility model, and any technical solutions that are the same as or similar to this utility model, fall within the protection scope of this utility model. Technical aspects, shapes, and structures not described in detail in this utility model are all publicly known technologies.
Claims
1. A wall interlayer sealing structure based on wall thermal insulation, characterized by, The utility model relates to a movable wall, including: The upper middle part of bottom plate (1) is fixed with main bearing plate (2), the upper side of bottom plate (1) is fixed with two fixed partition (4), and the opposite sides of main bearing plate (2) are located respectively, the middle part of fixed partition (4) is rotatably connected with a plurality of gyro wheel (5), the upper side of fixed partition (4) is slidably connected with telescopic honeycomb board (6), and the heat preservation layer (3) is arranged between main bearing plate (2) and telescopic honeycomb board (6), the outer side of telescopic honeycomb board (6) is equipped with heat insulation layer (7), and the outer side of heat insulation layer (7) is equipped with outer wall (8); The upper side of main bearing plate (2) is fixed with upper cover plate (9), the middle part of upper cover plate (9) is provided with a plurality of through slots, a plurality of clamping blocks (11) corresponding to two heat preservation layer (3) and two heat insulation layer (7) are slidably arranged in the through slot, the rear end in upper cover plate (9) is slidably connected with the push-out assembly corresponding to the rear end of two heat preservation layer (3) and two heat insulation layer (7), and the front end in upper cover plate (9) is slidably connected with the push plate assembly connected with the push-out assembly and a plurality of clamping blocks (11).
2. The wall sandwich sealing structure based on wall thermal insulation according to claim 1, characterized in that, Telescopic honeycomb board (6) includes first honeycomb board, and second honeycomb board slidably connected with the side of first honeycomb board, and first honeycomb board and second honeycomb board are slidably connected with the upper side of fixed partition (4) left and right.
3. The wall sandwich sealing structure based on wall thermal insulation according to claim 1, characterized in that, The upper middle part of two heat preservation layer (3) and two heat insulation layer (7) is provided with clamping groove (10), and a plurality of clamping blocks (11) correspond to a plurality of clamping groove (10) one by one.
4. The wall sandwich sealing structure based on wall thermal insulation according to claim 2, characterized in that, The push-out assembly includes inclined block (16) slidably connected with the rear end in upper cover plate (9), and a plurality of triangular blocks (17) slidably connected with the rear end in upper cover plate (9), the inclined block (16) is located on the side of a plurality of triangular blocks (17) upper side, and the inclined surface side of inclined block (16) corresponds to a plurality of triangular blocks (17), and the inclined surface side of a plurality of triangular blocks (17) corresponds to the upper side of the rear end of two heat preservation layer (3) and two heat insulation layer (7) respectively.
5. A wall sandwich seal according to claim 4, wherein, The push plate assembly includes a plurality of push blocks (12) slidably connected with the front end in upper cover plate (9), fixed rod (18) fixed to the front end of push block (12), push handle (19) rotatably connected with the front end of a plurality of fixed rod (18), two triangular plates (14) slidably connected with the upper side of the opposite outer side of the middle two clamping blocks (11), and push rod (15) fixed between the middle two push blocks (12).
6. A wall sandwich seal according to claim 5, wherein, The front end of clamping block (11) and the rear end of push block (12) are all inclined surfaces, and the two inclined surfaces correspond, and the upper side of clamping block (11) and triangular plate (14) is fixed with spring (13) between the top in upper cover plate (9).
7. A wall sandwich seal according to claim 6, wherein, The rear end of push rod (15) is fixed with the front side of inclined block (16), and the lower end of triangular plate (14) is located between the upper end of first honeycomb board and second honeycomb board.
Citation Information
Patent Citations
Wall interlayer sealing structure based on wall heat preservation
CN210827928U